U.S. patents available from 1976 to present.
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US Patent Application 20080036659 - CORRELATION OF FLIGHT TRACK DATA WITH OTHER DATA SOURCES

Application 20080036659 Filed on June 5, 2007. Published on February 14, 2008

Inventors

US Classes

342/454, Traffic342/450, Position indicating (e.g., triangulation)342/457Land vehicle location (e.g., bus, police car

Attorney, Agent or Firm

International Class

G01S 3/02

Issued Patent Number:

7612716


Claims


1. A method for real-time tracking of aircraft noise, comprising the steps of: inputting tracking source data from at least one of a multilateration or radar system to produce aircraft position data, determining flight track of at least one aircraft from broadcast aircraft identification data and aircraft position data, measuring noise using a noise measuring device, and correlating measured noise with the flight track in real-time to determine whether the aircraft has exceeded a predetermined noise limit.

2. The method of claim 1, further comprising the step of: determining if noise measured from the noise measuring device exceeds a predetermined threshold prior to correlating measured noise with the flight track.

3. The method of claim 1, further comprising the steps of: receiving a Mode S transponder code from the at least one aircraft, and identifying the aircraft from the Mode S transponder code.

4. A system for real-time tracking of aircraft noise, comprising: means for inputting tracking source data from at least one of a multilateration or radar system to produce aircraft position data; means for determining flight track of at least one aircraft from broadcast aircraft identification data and aircraft position data; means for measuring noise using a noise measuring device; and means for correlating measured noise with the flight track in real-time to determine whether the aircraft has exceeded a predetermined noise limit.

5. The system of claim 4, further comprising: means for determining if noise measured from the noise measuring device exceeds a predetermined threshold prior to correlating measured noise with the flight track.

6. The system of claim 4, further comprising: means for receiving a Mode S transponder code from the at least one aircraft; and means for identifying the aircraft from the Mode S transponder code.

7. A method for providing live display of aircraft flight information comprising the steps of: obtaining aircraft data from at least two of: aircraft position and flight information from ASDI data source, aircraft location and identification from multilateration of aircraft transponder data source, flight information from ACARS data source, and flight information from an airline flight information system data source, fusing aircraft data to integrate aircraft information from at least two of the data sources to produce integrated aircraft information, and providing a real-time display of the integrated aircraft flight information.

8. The method of claim 7, wherein said step of providing a live display comprises the step of providing a live display over a network.

9. The method of claim 7, wherein said step of providing a live display comprises the step of providing a live display via at least one physically connected display.

10. The method of claim 7, wherein said step of providing a live display comprises the step of providing a live display via at least one cockpit display.

11. The method of claim 7, further comprising the steps of: providing in at least one airport ground vehicle, a means for reporting identification, determining position and identification of the at least one airport ground vehicle, fusing airport ground vehicle identification and position data with the integrated aircraft information, and displaying position of the at least one airport ground vehicle on the display.

12. An apparatus for providing live display of aircraft flight information comprising: means for obtaining aircraft data from at least two of: aircraft position and flight information from ASDI, aircraft location and identification from multilateration of aircraft transponder 1090 MHz transmissions, and flight information from ACARS; means for fusing aircraft data to integrate aircraft information from at least two data sources to produce integrated aircraft information; and a display for displaying the integrated aircraft flight information in real-time.

13. The apparatus of claim 12, the display comprises a display coupled to a network.

14. The apparatus of claim 12, the display comprises at least one physically connected display.

15. The apparatus of claim 12, wherein the display comprises at least one cockpit display.

16. The system of claim 12, further comprising: means for reporting identification of at least one airport ground vehicle; means for determining position and identification of the at least one airport ground vehicle; and means for fusing airport ground vehicle identification and position data with the integrated aircraft information, wherein the position of the at least one airport ground vehicle is displayed on the display.

17. A method of simulating aircraft flight dynamics including on-board instrumentation, based on actual aircraft flight data, said method comprising the steps of: collecting aircraft position and identification data externally from aircraft surveillance and communications systems, determining aircraft performance parameters from the externally collected aircraft position and identification data; and simulating performance of an aircraft on a flight simulator using the aircraft performance parameters.

18. A system for simulating aircraft flight dynamics including on-board instrumentation based upon actual aircraft flight data, comprising: an aircraft surveillance system for collecting aircraft position data; a communications system for collecting aircraft identification data; means for determining aircraft performance parameters from the externally collected aircraft position and identification data; and a flight simulator, for simulating performance of an aircraft using the aircraft performance parameters.

19. A method for correcting aircraft transponder altitude data, comprising the steps of: receiving from an aircraft transponder including a pressure sensor, a signal indicating aircraft altitude, the aircraft transponder calibrated to an arbitrary barometric pressure, receiving from a ground-based pressure sensor of the same type included in the aircraft transponder, a signal indicating the altitude of the ground-based pressure sensor, the ground-based pressure sensor calibrated to the same arbitrary barometric pressure as the pressure sensor included in the aircraft transponder, and subtracting from the signal indicating aircraft altitude, the signal indicating altitude of the ground-based pressure sensor to determine distance above ground level of the aircraft.

20. The method of claim 19, further comprising the step of: adding the distance above ground level of the aircraft to a predetermined altitude above sea level of the ground-based pressure sensor to determine the altitude above sea level of the aircraft.

21. A system for correcting aircraft transponder altitude data, comprising: means for receiving from an aircraft transponder including a pressure sensor, a signal indicating aircraft altitude, the aircraft transponder calibrated to an arbitrary barometric pressure; a ground-based pressure sensor of the same type included in the aircraft transponder for generating a signal indicating the altitude of the ground-based pressure sensor, the ground-based pressure sensor calibrated to the same arbitrary barometric pressure as the pressure sensor included in the aircraft transponder; and means for subtracting from the signal indicating aircraft altitude, the signal indicating altitude of the ground-based pressure sensor to determine distance above ground level of the aircraft.

22. The system of claim 21, further comprising: means for adding the distance above ground level of the aircraft to a predetermined altitude above sea level of the ground-based pressure sensor to determine the altitude above sea level of the aircraft.

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